Ambient
Showing 64551–64600 of 146645 results
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Black PN (~80%)
Molecular Formula : C28 H17 N5 O14 S4 . 4 Na
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Black PN (~80%)
Molecular Formula : C28 H17 N5 O14 S4 . 4 Na
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Black Walnut Hull, Powder
Black Walnut Hull, Powder
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Black Walnut Hull, Powder
Black Walnut Hull, Powder
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Black Walnut Hull, Powder
Black Walnut Hull, Powder
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Blasticidin S Hydrochloride
Blasticidin S Hydrochloride
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Blasticidin S Hydrochloride
Molecular Formula : C17 H26 N8 O5 . Cl H
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Blasticidin S Hydrochloride
Molecular Formula : C17 H26 N8 O5 . Cl H
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Blasticidin S Hydrochloride
Molecular Formula : C17 H26 N8 O5 . Cl H
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Blasticidin S hydrochloride, phytopure
CAS Number: 3513-03-9
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Blattellaquinone
Molecular Formula : C12H14O4
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Blattellaquinone
Molecular Formula : C12H14O4
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Bleomycin A5 Hydrochloride Salt
Molecular Formula : C57 H89 N19 O21 S2 . Cl H
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Bleomycin A5 Hydrochloride Salt
Molecular Formula : C57 H89 N19 O21 S2 . Cl H
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Bleomycin A5 Hydrochloride Salt
Molecular Formula : C57 H89 N19 O21 S2 . Cl H
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Bleomycin B2 Acetate Salt (>85%)
Molecular Formula : C55 H84 N20 O21 S2 . C2 H4 O2
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Bleomycin B2 Acetate Salt (>85%)
Molecular Formula : C55 H84 N20 O21 S2 . C2 H4 O2
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Bleomycin B2 Acetate Salt (>85%)
Molecular Formula : C55 H84 N20 O21 S2 . C2 H4 O2
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Bleomycin Sulfate
Bleomycin Sulfate
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Bleomycin Sulfate
Bleomycin Sulfate
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Bleomycin Sulfate, NeuroPure
Bleomycin Sulfate, NeuroPure
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Bleomycin Sulfate, NeuroPure
Bleomycin Sulfate, NeuroPure
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Bleomycin Sulfate, NeuroPure
Bleomycin Sulfate, NeuroPure
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Blonanserin
Molecular Formula : C23 H30 F N3
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Blonanserin
Molecular Formula : C23 H30 F N3
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Blonanserin
Molecular Formula : C23 H30 F N3
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Blonanserin C
Molecular Formula : C21H26FN3
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Blonanserin C
Molecular Formula : C21H26FN3
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Blonanserin N-Oxide
Molecular Formula : C23H30FN3O
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Blonanserin N-Oxide
Molecular Formula : C23H30FN3O
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Blonanserin N-Oxide
Molecular Formula : C23H30FN3O
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Blonanserin-d5
Molecular Formula : C23H25D5FN3
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Blonanserin-d5
Molecular Formula : C23H25D5FN3
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Blue Tetrazolium
Blue Tetrazolium
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Blue-Ten(TM) Buffer Solution, pH 10.00, (+/-0.01 @ 25 DEG C)Color-coded BLUE, Reference Standard
Blue-Ten(TM) Buffer Solution, pH 10.00, (+/-0.01 @ 25 DEG C)Color-coded BLUE, Reference Standard
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Blue-Ten(TM) Buffer Solution, pH 10.00, (+/-0.01 @ 25 DEG C)Color-coded BLUE, Reference Standard
Blue-Ten(TM) Buffer Solution, pH 10.00, (+/-0.01 @ 25 DEG C)Color-coded BLUE, Reference Standard
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Blue-Ten(TM) Buffer Solution, pH 10.00, (+/-0.01 @ 25 DEG C)Color-coded BLUE, Reference Standard
Blue-Ten(TM) Buffer Solution, pH 10.00, (+/-0.01 @ 25 DEG C)Color-coded BLUE, Reference Standard
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Blue-Ten(TM) Buffer Solution, pH 10.00, (+/-0.01 @ 25 DEG C)Color-coded BLUE, Reference Standard
Blue-Ten(TM) Buffer Solution, pH 10.00, (+/-0.01 @ 25 DEG C)Color-coded BLUE, Reference Standard
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Blue-Ten(TM) Buffer Solution, pH 10.00, (+/-0.01 @ 25 DEG C)Color-coded BLUE, Reference Standard
Blue-Ten(TM) Buffer Solution, pH 10.00, (+/-0.01 @ 25 DEG C)Color-coded BLUE, Reference Standard
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BMP-2, Human
Human Bone Morphogenetic Protein-2 (BMP-2) is a bone-growth regulatory factor and belongs to the transforming growth factor-beta (TGF-beta) superfamily. Human Bone Morphogenetic Protein-2 (BMP-2) is synthesized as large precursor molecule (Met1-Arg396, with a signal peptide from Met1 to Gly23), propeptide (Leu24-Arg282) of which is cleaved by PCSK5 (Proprotein Convertase Subtilisin/Kexin type 5). The active form consists of a dimer of two identical proteins which are linked by a disulfide bond at Cys360. It plays an important role in the development of bone and cartilage, cardiac cell differentiation and epithelial to mesenchymal transition. It is also involved in the hedgehog pathway, TGF-beta signaling pathway, and in cytokine-cytokine receptor interaction.
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BMP-2, Human
Human Bone Morphogenetic Protein-2 (BMP-2) is a bone-growth regulatory factor and belongs to the transforming growth factor-beta (TGF-beta) superfamily. Human Bone Morphogenetic Protein-2 (BMP-2) is synthesized as large precursor molecule (Met1-Arg396, with a signal peptide from Met1 to Gly23), propeptide (Leu24-Arg282) of which is cleaved by PCSK5 (Proprotein Convertase Subtilisin/Kexin type 5). The active form consists of a dimer of two identical proteins which are linked by a disulfide bond at Cys360. It plays an important role in the development of bone and cartilage, cardiac cell differentiation and epithelial to mesenchymal transition. It is also involved in the hedgehog pathway, TGF-beta signaling pathway, and in cytokine-cytokine receptor interaction.
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BMP-2, Human
Human Bone Morphogenetic Protein-2 (BMP-2) is a bone-growth regulatory factor and belongs to the transforming growth factor-beta (TGF-beta) superfamily. Human Bone Morphogenetic Protein-2 (BMP-2) is synthesized as large precursor molecule (Met1-Arg396, with a signal peptide from Met1 to Gly23), propeptide (Leu24-Arg282) of which is cleaved by PCSK5 (Proprotein Convertase Subtilisin/Kexin type 5). The active form consists of a dimer of two identical proteins which are linked by a disulfide bond at Cys360. It plays an important role in the development of bone and cartilage, cardiac cell differentiation and epithelial to mesenchymal transition. It is also involved in the hedgehog pathway, TGF-beta signaling pathway, and in cytokine-cytokine receptor interaction.
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BMP-4, Human
Human BMP-4 is one of at least 15 structurally and functionally related BMPs, which are members of the transforming growth factor β (TGF-β) superfamily. BMPs were originally identified as protein regulators of cartilage and bone formation. However, they havesince been shown to be involved in embryogenesis and morphogenesis of various tissues and organs. BMPs have also been shown to regulate the growth, differentiation, chemotaxis and apoptosis of various cell types, including mesenchymal cells, epithelial cells, hematopoietic cells and neuronal cells. BMP-4 is synthesized as large precursor molecules which are cleaved by proteolytic enzymes. The active form can consist of a dimer of two identical proteins or a heterodimer of two related bone morphogenetic proteins.
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BMP-4, Human
Human BMP-4 is one of at least 15 structurally and functionally related BMPs, which are members of the transforming growth factor β (TGF-β) superfamily. BMPs were originally identified as protein regulators of cartilage and bone formation. However, they havesince been shown to be involved in embryogenesis and morphogenesis of various tissues and organs. BMPs have also been shown to regulate the growth, differentiation, chemotaxis and apoptosis of various cell types, including mesenchymal cells, epithelial cells, hematopoietic cells and neuronal cells. BMP-4 is synthesized as large precursor molecules which are cleaved by proteolytic enzymes. The active form can consist of a dimer of two identical proteins or a heterodimer of two related bone morphogenetic proteins.
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BMP-7, Human
Human BMP-7 is one of at least 15 structurally and functionally related BMPs, which are members of the transforming growth factor β (TGF-β) superfamily. BMPs were originally identified as protein regulators of cartilage and bone formation. However, they havesince been shown to be involved in embryogenesis and morphogenesis of various tissues and organs. BMPs have also been shown to regulate the growth, differentiation, chemotaxis and apoptosis of various cell types, including mesenchymal cells, epithelial cells, hematopoietic cells and neuronal cells. BMP-7 is synthesized as large precursor molecules which are cleaved by proteolytic enzymes. The active form can consist of a dimer of two identical proteins or a heterodimer of two related bone morphogenetic proteins.
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BMP-7, Human
Human BMP-7 is one of at least 15 structurally and functionally related BMPs, which are members of the transforming growth factor β (TGF-β) superfamily. BMPs were originally identified as protein regulators of cartilage and bone formation. However, they havesince been shown to be involved in embryogenesis and morphogenesis of various tissues and organs. BMPs have also been shown to regulate the growth, differentiation, chemotaxis and apoptosis of various cell types, including mesenchymal cells, epithelial cells, hematopoietic cells and neuronal cells. BMP-7 is synthesized as large precursor molecules which are cleaved by proteolytic enzymes. The active form can consist of a dimer of two identical proteins or a heterodimer of two related bone morphogenetic proteins.
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BMS 214662
Molecular Formula : C25H23N5O2S2
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BMS 833923
Molecular Formula : C30 H27 N5 O
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BMS 833923
Molecular Formula : C30 H27 N5 O
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BMS 833923
Molecular Formula : C30 H27 N5 O